Engineering building pouring stirring device
By introducing a circulating mixing design with mixing components and spiral output pipes into the construction pouring mixing device, the problems of long mixing time and low uniformity in the existing device are solved, efficient raw material mixing and uniform mixing are achieved, and construction efficiency and quality are improved.
Patent Information
- Application Number
- CN202422797594.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-18
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2034-11-18
AI Technical Summary
The existing engineering construction pouring mixing device has a long mixing time, low mixing efficiency, and insufficient uniformity of raw material mixing, which affects construction efficiency and quality.
The structural design includes a stirring tank, a first stirring blade, a spiral output pipe, a circulation pipe, a discharge cover and a pouring pipe, combined with a screw rod and a transmission system driven by multiple motors, to achieve pretreatment of the mixing components and circulating stirring of the raw materials, thereby improving stirring efficiency and uniformity.
Through the pretreatment of the mixing components and the circulating stirring of the spiral output pipe, the stirring pressure is reduced, the stirring efficiency and uniformity of the raw materials are improved, and the construction efficiency and quality are improved.
Smart Images

Figure CN223407193U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of engineering construction pouring and stirring devices, in particular to an engineering construction pouring and stirring device. Background Art
[0002] Engineering construction pouring mixing device is a vital equipment in construction projects. Concrete mixer, as a equipment used to mix raw materials such as cement, sand, and gravel, is widely used in the field of construction projects.
[0003] A Chinese patent discloses a pouring and mixing device for civil air defense construction (authorization publication number CN206778303U). This patented technology enables independent pouring processes, thereby improving construction efficiency. However, the pouring and mixing device directly stirs the introduced materials, which takes a long time and is detrimental to the mixing efficiency. The mixing of the materials is also low, which is detrimental to the mixing quality. Therefore, those skilled in the art have provided a pouring and mixing device for civil air defense construction to address the problems raised in the aforementioned background technology. Utility Model Content
[0004] The purpose of the utility model is to provide a pouring and mixing device for engineering construction to solve the problems raised in the above background technology.
[0005] To achieve the above objectives, the present invention provides the following technical solutions:
[0006] A pouring and mixing device for engineering construction comprises a mixing tank, a first mixing blade, a spiral output pipe, a circulation pipe, a discharge cover and a pouring pipe, wherein the first mixing blade is located at the lower end of the interior of the mixing tank, the spiral output pipe is located at the lower end of one side of the mixing tank, the circulation pipe is located at the upper side of the spiral output pipe, the discharge cover is located at the upper end of the circulation pipe, the pouring pipe is located at the lower side of the spiral output pipe, a sliding frame is provided at the upper end of the interior of the mixing tank, a partition is provided inside the sliding frame, a mixing component is installed on the upper side of the sliding frame, and the mixing tank is provided with a plurality of mixing components. A first mounting bracket is installed at a position corresponding to the discharge cover on one side, a first through-type screw motor is installed at an outer end of the first mounting bracket, a first screw is arranged inside the first through-type screw motor, a second through-type screw motor is installed at a position corresponding to the mixing component on one side of the stirring tank, a second screw is arranged inside the second through-type screw motor, a first transmission motor is installed at a position corresponding to the first stirring blade on the other side of the stirring tank, a screw is installed inside the spiral output pipe, and a second transmission motor is installed at a position corresponding to the screw on one side of the spiral output pipe.
[0007] As a further solution of the present invention: the mixing component includes a second mounting frame, a second stirring blade is installed on the inner side of the second mounting frame, a third transmission motor is installed at the position of the second stirring blade on the front side of the second mounting frame, a sliding block is provided on the lower side of the second mounting frame, and a sliding groove is provided on the upper side of the sliding frame.
[0008] As a further solution of the present invention: the upper end of the stirring tank is connected to the lower end of the stirring tank through a sliding frame, the lower end of the stirring tank is connected to the input end of the spiral output pipe, the other end of the spiral output pipe is connected to the input ends of the circulation pipe and the casting pipe respectively, the output end of the circulation pipe is connected to the input end of the discharge hood, and the output end of the discharge hood is connected to the interior of the stirring tank.
[0009] As a further solution of the present invention: the outer end of the second screw rod slides at the outer position of the stirring tank, the outer end of the second screw rod slides at the outer position of the stirring tank through the second through-type screw rod motor, the inner end of the second screw rod is fixed at the outer position of the mixing component, and the mixing component slides at the upper position of the sliding frame through the second screw rod.
[0010] As a further solution of the present invention: the outer end of the first screw rod slides at the outer position of the first mounting bracket, the outer end of the first screw rod slides at the outer position of the first mounting bracket through the first through-type screw rod motor, the inner end of the first screw rod is fixed at the outer position of the partition, and the partition slides at the inner position of the sliding frame through the first screw rod.
[0011] As a further solution of the present invention: the first stirring blade is rotated to the internal position of the stirring tank by a first transmission motor, one end of the screw rod is located at the internal position of the stirring tank, and the screw rod is rotated to the internal position of the spiral output pipe by a second transmission motor.
[0012] As a further solution of the present invention: the second stirring blade is rotated at the inner position of the second mounting frame by a third transmission motor, and the lower end of the slider slides at the inner position of the slide groove.
[0013] Compared with the prior art, the beneficial effects of the present invention are:
[0014] The utility model relates to a construction pouring and stirring device. The mixing component pre-treats the raw materials and reduces the stirring pressure of the first stirring blade. During the stirring process of the first stirring blade, the mixing component can simultaneously mix the raw materials, thereby improving the utilization rate of time and the stirring efficiency of the raw materials.
[0015] The raw materials inside the mixing tank are circulated through the spiral output pipe, the circulation pipe and the discharge cover, thereby improving the uniformity of the raw material mixing and benefiting the mixing quality of the raw materials. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a structural diagram of a pouring and mixing device for engineering construction;
[0017] Figure 2 A perspective view of a pouring and mixing device for construction engineering;
[0018] Figure 3 This is a schematic diagram of the structure of a mixing component in a pouring and mixing device for engineering construction;
[0019] Figure 4 A pouring and mixing device for engineering construction Figure 2 Schematic diagram of the structure of part A.
[0020] In the figure: 1. mixing tank; 2. first mixing blade; 3. spiral output pipe; 4. circulation pipe; 5. discharge hood; 6. pouring pipe; 7. slide frame; 8. partition; 9. mixing component; 10. first mounting frame; 11. first through-type screw motor; 12. first screw; 13. second through-type screw motor; 14. second screw; 15. first transmission motor; 16. spiral rod; 17. second transmission motor; 18. second mounting frame; 19. second mixing blade; 20. third transmission motor; 21. slider; 22. slide chute. DETAILED DESCRIPTION
[0021] See also Figures 1 to 4In the embodiment of the present invention, a pouring and mixing device for engineering construction includes a mixing tank 1, a first mixing blade 2, a spiral output pipe 3, a circulation pipe 4, a discharge cover 5 and a pouring pipe 6. The first mixing blade 2 is located at the lower end position of the interior of the mixing tank 1, the spiral output pipe 3 is located at the lower end position of one side of the mixing tank 1, the circulation pipe 4 is located at the upper side position of the spiral output pipe 3, the discharge cover 5 is located at the upper end position of the circulation pipe 4, and the pouring pipe 6 is located at the lower side position of the spiral output pipe 3. A sliding frame 7 is provided at the upper end position of the interior of the mixing tank 1, a partition 8 is provided inside the sliding frame 7, and a mixing component 9 is installed on the upper side of the sliding frame 7. A first mounting frame 10 is installed at the position of the discharge cover 5 on one side of the mixing tank 1, and a first penetrating A screw motor 11 is provided, a first screw 12 is provided inside the first through-type screw motor 11, a second through-type screw motor 13 is installed at the position of the mixing component 9 on one side of the stirring tank 1, a second screw 14 is provided inside the second through-type screw motor 13, a first transmission motor 15 is installed at the position of the first stirring blade 2 on the other side of the stirring tank 1, a screw 16 is installed inside the spiral output pipe 3, a second transmission motor 17 is installed at the position of the screw 16 on one side of the spiral output pipe 3, the upper end of the stirring tank 1 is connected with the lower end of the stirring tank 1 through the sliding frame 7, the lower end of the stirring tank 1 is connected with the input end of the spiral output pipe 3, the other end of the spiral output pipe 3 is connected with the input ends of the circulation pipe 4 and the casting pipe 6 respectively, and the circulation pipe The output end of 4 is connected with the input end of the discharge cover 5, and the output end of the discharge cover 5 is connected with the interior of the mixing tank 1. The outer end of the second screw rod 14 slides at the outer position of the mixing tank 1, and the outer end of the second screw rod 14 slides at the outer position of the mixing tank 1 through the second through-type screw motor 13. The inner end of the second screw rod 14 is fixed to the outer position of the mixing component 9, and the mixing component 9 slides at the upper position of the sliding frame 7 through the second screw rod 14. The outer end of the first screw rod 12 slides at the outer position of the first mounting bracket 10, and the outer end of the first screw rod 12 slides at the outer position of the first mounting bracket 10 through the first through-type screw motor 11. The inner end of the first screw rod 12 is fixed to the outer position of the partition 8, and the partition 8 slides on the sliding frame 7 through the first screw rod 12. At the internal position of the frame 7, the first stirring blade 2 is rotated to the internal position of the stirring tank 1 through the first transmission motor 15, and one end of the screw rod 16 is located in the internal position of the stirring tank 1. The screw rod 16 is rotated to the internal position of the spiral output pipe 3 through the second transmission motor 17. First, an engineering construction pouring and mixing device is installed to the use position. Then, the raw materials are put into the interior of the stirring tank 1. The mixing component 9 is operated to mix the raw materials. The second through-type screw motor 13 is operated to drive the second screw rod 14 to slide on the outside of the stirring tank 1. The second screw rod 14 drives the internal movement of the mixing component 9 to adjust the mixing position of the mixing component 9. After the mixing is completed, the first through-type screw motor 11 is operated to drive the first screw rod 12 to slide on the outside of the first mounting frame 10.The first screw rod 12 drives the partition 8 to slide out of the sliding frame 7, and the raw materials mixed at the upper end of the mixing tank 1 fall into the lower end of the mixing tank 1 through the sliding frame 7. The first transmission motor 15 drives the first stirring blade 2 to rotate, and the water is added to the lower end of the mixing tank 1 through the sliding frame 7 to stir the raw materials. The first through-type screw motor 11 drives the first screw rod 12 to slide on the outside of the first mounting frame 10. The first screw rod 12 pushes the partition 8 to slide into the interior of the sliding frame 7, and the raw materials are added to the upper end of the interior of the mixing tank 1 again. The mixing operation is ready for the next stirring operation. During the stirring process of the first stirring blade 2, the second transmission motor 17 drives the screw rod 16 to rotate, directing the raw materials at the lower end of the stirring tank 1 into the interior of the spiral output pipe 3. The raw materials inside the spiral output pipe 3 are circulated to the lower end of the stirring tank 1 through the circulation pipe 4 and the discharge cover 5, improving the uniformity of the raw materials. When the first stirring blade 2 completes the stirring of the raw materials, the raw materials inside the spiral output pipe 3 are discharged through the pouring pipe 6. After being discharged, the partition 8 slides out of the sliding frame 7 again, and the raw materials mixed at the upper end of the stirring tank 1 are re-entered into the lower end of the stirring tank 1 for stirring.
[0022] exist Figure 2 、 3 4: The mixing component 9 includes a second mounting frame 18, a second stirring blade 19 is installed on the inner side of the second mounting frame 18, and a third transmission motor 20 is installed at the position of the second stirring blade 19 on the front side of the second mounting frame 18. A slider 21 is provided on the lower side of the second mounting frame 18, and a slide groove 22 is provided on the upper side of the slide frame 7. The second stirring blade 19 is rotated at the inner position of the second mounting frame 18 by the third transmission motor 20, and the lower end of the slider 21 slides in the inner position of the slide groove 22 to put the raw materials into the mixing tank 1. The operation of the third transmission motor 20 drives the second stirring blade 19 to rotate inside the second mounting frame 18, and the raw materials are mixed by the second stirring blade 19. The second through-type screw motor 13 drives the second screw rod 14 to slide on the outside of the mixing tank 1, and the second screw rod 14 drives the internal movement of the mixing component 9. During the movement, the lower end of the slider 21 slides in the inner position of the slide groove 22 to guide the mixing component 9 and adjust the mixing position of the mixing component 9.
[0023] The working principle of the present invention is as follows: first, an engineering construction pouring and mixing device is installed to the use position, and then the raw materials are put into the mixing tank 1, the third transmission motor 20 runs to drive the second stirring blade 19 to rotate inside the second mounting frame 18, and the raw materials are mixed by the second stirring blade 19, the second through-type screw motor 13 runs to drive the second screw rod 14 to slide on the outside of the mixing tank 1, and the second screw rod 14 drives the internal movement of the mixing component 9. During the movement, the lower end of the slider 21 slides inside the slide groove 22 to guide the mixing component 9 and adjust the mixing position of the mixing component 9. After the mixing is completed, the first through-type screw motor 11 runs to drive the first screw rod 12 to slide on the outside of the first mounting frame 10, and the first screw rod 12 drives the partition 8 to slide out of the slide frame 7. The raw materials mixed at the upper end of the mixing tank 1 fall into the lower end of the mixing tank 1 through the slide frame 7, and the first transmission motor 15 runs to drive The first stirring blade 2 rotates, and the water is added to the lower end of the mixing tank 1 through the sliding frame 7 to stir the raw materials. The first through-type screw motor 11 runs to drive the first screw 12 to slide on the outside of the first mounting frame 10. The first screw 12 pushes the partition 8 to slide into the interior of the sliding frame 7, and the raw materials are added to the upper end of the interior of the mixing tank 1 again, and the mixing operation is prepared for the next stirring operation. During the stirring process of the first stirring blade 2, the second transmission motor 17 runs to drive the screw 16 to rotate, and the raw materials at the lower end of the mixing tank 1 are introduced into the interior of the spiral output pipe 3. The raw materials inside the spiral output pipe 3 are circulated to the lower end of the mixing tank 1 through the circulation pipe 4 and the discharge hood 5, thereby improving the uniformity of the raw material stirring. When the first stirring blade 2 completes the stirring of the raw materials, the raw materials inside the spiral output pipe 3 are discharged through the casting pipe 6. After being discharged, the partition 8 slides out of the sliding frame 7 again, and the raw materials mixed at the upper end of the mixing tank 1 enter the lower end of the mixing tank 1 for stirring again.
[0024] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A construction pouring and mixing device, comprising a mixing tank (1), a first stirring blade (2), a spiral output pipe (3), a circulation pipe (4), a discharge hood (5) and a pouring pipe (6), wherein the first stirring blade (2) is located at the lower end of the interior of the mixing tank (1), the spiral output pipe (3) is located at the lower end of one side of the mixing tank (1), the circulation pipe (4) is located at the upper side of the spiral output pipe (3), the discharge hood (5) is located at the upper end of the circulation pipe (4), and the pouring pipe (6) is located at the lower side of the spiral output pipe (3), characterized in that: A sliding frame (7) is provided at the upper end of the interior of the stirring tank (1), a partition (8) is provided inside the sliding frame (7), a mixing component (9) is installed on the upper side of the sliding frame (7), a first mounting frame (10) is installed at a position corresponding to the discharge cover (5) on one side of the stirring tank (1), a first through-type screw motor (11) is installed at the outer end of the first mounting frame (10), a first screw (12) is provided inside the first through-type screw motor (11), a second through-type screw motor (13) is installed at a position corresponding to the mixing component (9) on one side of the stirring tank (1), a second screw (14) is provided inside the second through-type screw motor (13), a first transmission motor (15) is installed at a position corresponding to the first stirring blade (2) on the other side of the stirring tank (1), a screw (16) is installed inside the spiral output pipe (3), and a second transmission motor (17) is installed at a position corresponding to the screw (16) on one side of the spiral output pipe (3).
2. The pouring and mixing device for construction engineering according to claim 1, characterized in that: The mixing component (9) comprises a second mounting frame (18), a second stirring blade (19) is mounted on the inner side of the second mounting frame (18), a third transmission motor (20) is mounted on the front side of the second mounting frame (18) at a position corresponding to the second stirring blade (19), a sliding block (21) is provided on the lower side of the second mounting frame (18), and a sliding groove (22) is provided on the upper side of the sliding frame (7).
3. The pouring and mixing device for construction engineering according to claim 1, characterized in that: The upper end of the mixing tank (1) is connected to the lower end of the mixing tank (1) through the sliding frame (7), the lower end of the mixing tank (1) is connected to the input end of the spiral output pipe (3), the other end of the spiral output pipe (3) is connected to the input ends of the circulation pipe (4) and the pouring pipe (6), respectively, the output end of the circulation pipe (4) is connected to the input end of the discharge cover (5), and the output end of the discharge cover (5) is connected to the interior of the mixing tank (1).
4. The pouring and mixing device for construction engineering according to claim 1, characterized in that: The outer end of the second screw rod (14) slides at an outer position of the stirring tank (1), and the outer end of the second screw rod (14) slides at an outer position of the stirring tank (1) through a second through-type screw motor (13). The inner end of the second screw rod (14) is fixed at an outer position of the mixing component (9), and the mixing component (9) slides at an upper position of the slide frame (7) through the second screw rod (14).
5. The pouring and mixing device for construction engineering according to claim 1, characterized in that: The outer end of the first screw rod (12) slides at an outer position of the first mounting frame (10), and the outer end of the first screw rod (12) slides at an outer position of the first mounting frame (10) through a first through-type screw rod motor (11). The inner end of the first screw rod (12) is fixed at an outer position of the partition (8), and the partition (8) slides at an inner position of the slide frame (7) through the first screw rod (12).
6. The pouring and mixing device for construction engineering according to claim 1, characterized in that: The first stirring blade (2) is rotated to an internal position of the stirring tank (1) by a first transmission motor (15), one end of the screw rod (16) is located at an internal position of the stirring tank (1), and the screw rod (16) is rotated to an internal position of the spiral output pipe (3) by a second transmission motor (17).
7. The pouring and mixing device for construction engineering according to claim 2, characterized in that: The second stirring blade (19) is rotated to an inner position of the second mounting frame (18) via a third transmission motor (20), and the lower end of the slider (21) slides to an inner position of the slide groove (22).
Citation Information
Patent Citations
Agitating unit is pour to civil air defense engineering building
CN206778303U